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Numerical analysis of a deep drawing process with additional force transmission for an extension of the process limits

机译:带有附加力传递以扩展过程极限的深冲过程的数值分析

摘要

By sheet metal forming processes the forming limits and part characteristics are defined through the process specific loads. In deep drawing processes the maximum deep draw ratios as well as the springback behaviour of the metal parts are depending on the stress distribution in the part material during the forming process. While exceeding the load limits, a failure in the material occurs, which can be avoided by additional force transmission activated in the deep drawing process before the forming limit of material is achieved. This contribution deals with numerical investigation of process effect caused by additional force transmission regarding the extension of the process limits. Here, the steel material HCT 600X+Z (1.0941) in thickness s 0 = 1.0 mm is analyzed numerically using the anisotropic model Hill48. This model is validated by the means of cup test by Swift. Both, the FEA of conventional and forming process with additional force transmission are carried out. The numerical results are compared with reference geometry of rectangle cup.
机译:通过钣金成形过程,成形极限和零件特性是通过特定过程载荷定义的。在深冲过程中,金属零件的最大深冲比率以及回弹行为取决于成型过程中零件材料中的应力分布。当超过载荷极限时,材料发生故障,这可以通过在达到材料的成形极限之前在深冲过程中激活的附加力传递来避免。该贡献用于处理过程影响的数值研究,该过程影响是由于扩展了过程极限而产生的额外的力传递。在此,使用各向异性模型Hill48对厚度为s 0 = 1.0 mm的钢材HCT 600X + Z(1.0941)进行了数值分析。该模型通过Swift的杯子测试方法进行了验证。既进行了传统的有限元分析,又进行了附加力传递的成型过程。将数值结果与矩形杯的参考几何进行比较。

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